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Detectionand Occurrence of N-Nitrosaminesin Archived Biosolids from the Targeted National Sewage Sludge Surveyof the U.S. Environmental Protection Agency

机译:检测和亚硝胺的发生有针对性的国家污水污泥调查获得的已存档生物固体中的含量美国环境保护署

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摘要

The occurrence of eight carcinogenic N-nitrosamines in biosolids from 74 wastewater treatment plants (WWTPs) in the contiguous United States was investigated. Using liquid chromatography-tandem mass spectrometry, seven nitrosamines [(N-nitrosodimethylamine (NDMA), N-nitrosomethylethylamine, N-nitrosodi-n-propylamine (NDPA), N-nitrosodibutylamine, N-nitrosopyrrolidine, N-nitrosopiperidine (NPIP), and N-nitrosodiphenylamine (NDPhA)] were detected with varying detection frequency (DF) in 88% of the biosolids samples (n = 80), with five of the seven being reported here for the first time in biosolids. While rarely detected (DF 3%), NDMA was the most abundant compound at an average concentration of 504 ± 417 ng/g dry weight of biosolids. The most frequently detected nitrosamine was NDPhA (0.7—147 ng/g) with a DF of 79%, followed by NDPA (7–505 ng/g) and NPIP (51–1185 ng/g) at 21% and 11%, respectively. The DF of nitrosamines in biosolids was positively correlated with their respective n-octanol–water partition coefficients (R2 = 0.65). The DF and sum of mean concentrations of nitrosamines in biosolids increased with the treatment capacity of WWTPs. Given their frequent occurrence in nationally representative samples andthe amount of U.S. biosolids being applied on land as soil amendment,this study warrants more research into the occurrence and fate ofnitrosamines in biosolids-amended soils in the context of crop anddrinking water safety.
机译:调查了美国本土74个废水处理厂(WWTP)的生物固体中八种致癌N-亚硝胺的存在。使用液相色谱-串联质谱法,七个亚硝胺[[N-亚硝基二甲基胺(NDMA),N-亚硝基甲基乙胺,N-亚硝基二正丙胺(NDPA),N-亚硝基二丁胺,N-亚硝基吡咯烷,N-亚硝基哌啶(NPIP)和在88%的生物固体样品(n = 80)中以不同的检测频率(DF)检测到N-亚硝基二苯胺(NDPhA),其中7种中的5种是首次在生物固体中报告,但很少被检测到(DF 3 NDMA是最丰富的化合物,平均浓度为504±417 ng / g生物固体干重,最常见的亚硝胺是NDPhA(0.7-147 ng / g),DF为79%,其次是NDPA (7–505 ng / g)和NPIP(51–1185 ng / g)分别为21%和11%。生物固体中亚硝胺的DF与它们各自的正辛醇-水分配系数成正相关(R 2 = 0.65)。处理能力使生物固体中的DF和亚硝胺平均浓度总和增加污水处理厂的性质。鉴于它们经常出现在具有国家代表性的样本中,作为土壤改良剂在土地上施用的美国生物固体的量,这项研究值得进一步研究作物和土壤中生物固体改良土壤中的亚硝胺饮用水安全。

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